Kilogauss magnetic field and jet dynamics in the quasar NRAO 530
Mikhail Lisakov, Svetlana Jorstad, Maciek Wielgus, Evgeniya V., Kravchenko, Aleksei S. Nikonov, Ilje Cho, Sara Issaoun, Juan-Carlos Algaba,, Thomas P. Krichbaum, Uwe Bach, Eduardo Ros, Helge Rottmann, Salvador, S'anchez, Jan Wagner, Anton Zensus

TL;DR
This study uses high-frequency VLBI observations to measure the magnetic field strength near the supermassive black hole in NRAO 530, revealing extremely high magnetic fields and complex jet behavior consistent with a precessing jet model.
Contribution
First VLBI measurement of Faraday rotation at 43-227 GHz in NRAO 530, providing new insights into magnetic fields and jet structure near the black hole.
Findings
Magnetic field near black hole estimated at 3,000-30,000 G.
Detected emission at 227 GHz possibly from the accretion disk.
Jet exhibits precession with an estimated period of around 6 years.
Abstract
The advancement of the Event Horizon Telescope has enabled the study of relativistic jets in active galactic nuclei down to sub-parsec linear scales even at high redshift. Quasi-simultaneous multifrequency observations provide insights into the physical conditions in compact regions and allow testing accretion theories. Initially we aimed at measuring the magnetic field strength close to the central supermassive black hole in NRAO 530 (1730-130) by studying frequency-dependent opacity of the jet matter, Faraday rotation and the spectral index in the mm-radio bands. NRAO 530 was observed quasi-simultaneously at 15, 22, 43, 86, and 227 GHz at four different very long baseline interferometer (VLBI) networks. By the means of imaging and model-fitting, we aligned the images, taken at different frequencies. We explored opacity along the jet and distribution of the linearly polarized emission…
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Taxonomy
TopicsGeophysics and Gravity Measurements · Astrophysics and Cosmic Phenomena · Astrophysical Phenomena and Observations
